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靶标激活的链霉亲和素-生物素可控结合探针

Target-activated streptavidin-biotin controlled binding probe.

作者信息

Wu Yung-Peng, Chew Chee Ying, Li Tian-Neng, Chung Tzu-Hsuan, Chang En-Hao, Lam Chak Hin, Tan Kui-Thong

机构信息

Department of Chemistry , National Tsing Hua University , 101 Sec. 2, Kuang Fu Rd , Hsinchu 30013 , Taiwan , Republic of China . Email:

Institute of Molecular and Cellular Biology , Department of Life Science , National Tsing Hua University , 101 Sec. 2, Kuang Fu Rd , Hsinchu 30013 , Taiwan , Republic of China.

出版信息

Chem Sci. 2017 Nov 17;9(3):770-776. doi: 10.1039/c7sc04014h. eCollection 2018 Jan 21.

Abstract

Target-activated chemical probes are important tools in basic biological research and medical diagnosis for monitoring enzyme activities and reactive small molecules. Based on the fluorescence turn-on mechanism, they can be divided into two classes: dye-based fluorescent probes and caged-luciferin. In this paper, we introduce a new type of chemical probe in which the fluorescence turn-on is based on controlled streptavidin-biotin binding. Compared to conventional probes, the streptavidin-biotin controlled binding probe has several advantages, such as minimal background at its "OFF" state, multiple signal amplification steps, and unlimited selection of the optimal dyes for detection. To expand the scope, a new synthetic method was developed, through which a wider range of analyte recognition groups can be easily introduced to construct the binding probe. This probe design was successfully applied to image and study secreted peroxynitrite (ONOO) at the cell surface of macrophages where information on ONOO is difficult to obtain. As the signals are generated upon the binding of streptavidin to the biotin probe, this highly versatile design can not only be used in fluorescence detection but can also be applied in various other detection modes, such as electrochemical and enzyme-amplified luminescence detection.

摘要

靶标激活化学探针是基础生物学研究和医学诊断中用于监测酶活性和活性小分子的重要工具。基于荧光开启机制,它们可分为两类:染料基荧光探针和笼状荧光素。在本文中,我们介绍了一种新型化学探针,其荧光开启基于可控的链霉亲和素 - 生物素结合。与传统探针相比,链霉亲和素 - 生物素可控结合探针具有多个优点,如在“关闭”状态下背景极小、多步信号放大以及检测用最佳染料的选择不受限制。为了扩大应用范围,开发了一种新的合成方法,通过该方法可以轻松引入更广泛的分析物识别基团来构建结合探针。这种探针设计成功应用于巨噬细胞表面分泌的过氧亚硝酸盐(ONOO)的成像和研究,而在该位置获取ONOO的信息较为困难。由于信号是在链霉亲和素与生物素探针结合时产生的,这种高度通用的设计不仅可用于荧光检测,还可应用于各种其他检测模式,如电化学和酶放大发光检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63f5/5872805/5ee7b02d26f8/c7sc04014h-f1.jpg

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